Numerical Evaluation of Vibration Induced by Explosive Blasting in the Bauxite Mines of Sangarédi, Guinea

Oumar Keita, Yacouba Camara
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Abstract

During rocks blasting by explosives in mines and quarries, Vibration phenomena appear in the surrounding environment, often causing significant damage to neighboring structures such as: buildings, bridges, tunnels and dams. This is why mining companies using the technique of the explosion are often faced with constraints of limiting the vibration level in order to minimize or eliminate potential damage to neighboring structures or reduce neighbor complaints. This paper presents a new numerical prediction model for vibration level induced by explosive blasting in the Bauxite mines of Sangarédi, Guinea. The dynamic damage law is associated with vibration phenomena analyses to determine numerical value of the particle velocities of different points located at different distances from the explosion hole for the explosion of a single charge hole, in order to compare to the vibration level required by the specifications of the Guinea mining company, which authorizes a vibration level of 10 mm/s in an inhabited area. The prediction of the vibration level gives particle velocities of 11m/s at a distance of 10 m from the explosion hole. Based on the results of the model, one could estimate that this required vibration level would be reached at a distance of 80 m from the blast hole.
几内亚桑加雷迪铝土矿爆破引起的振动数值评估
在矿山和采石场使用炸药爆破岩石时,周围环境会出现振动现象,通常会对建筑物、桥梁、隧道和水坝等邻近结构造成重大损害。这就是为什么使用爆破技术的矿业公司经常面临限制振动水平的约束,以尽量减少或消除对邻近结构的潜在损害或减少邻居投诉。本文针对几内亚 Sangarédi 铝土矿爆破引起的振动水平提出了一个新的数值预测模型。动态破坏规律与振动现象分析相关联,以确定单个装药孔爆炸时距爆破孔不同距离的不同点的颗粒速度数值,从而与几内亚矿业公司规范要求的振动水平进行比较,几内亚矿业公司规定居住区的振动水平为 10 毫米/秒。根据对振动水平的预测,在距离爆炸孔 10 米处的颗粒速度为 11 米/秒。根据该模型的结果,我们可以估计在距离爆破孔 80 米处就能达到所需的振动水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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